Evolution of the Mass and Luminosity Functions of Globular Star Clusters
arXiv:1611.09876 · doi:10.3847/0004-637X/833/1/8
Abstract
We reexamine the dynamical evolution of the mass and luminosity functions of globular star clusters (GCMF and GCLF). Fall & Zhang (2001, hereafter FZ01) showed that a power-law MF, as commonly seen among young cluster systems, would evolve by dynamical processes over a Hubble time into a peaked MF with a shape very similar to the observed GCMF in the Milky Way and other galaxies. To simplify the calculations, the semi-analytical FZ01 model adopted the "classical" theory of stellar escape from clusters, and neglected variations in the ratios of clusters. Kruijssen & Portegies Zwart (2009, hereafter KPZ09) modified the FZ01 model to include "retarded" and mass-dependent stellar escape, the latter causing significant variations. KPZ09 asserted that their model was compatible with observations whereas the FZ01 model was not. We show here that this claim is not correct; the FZ01 and KPZ09 models fit the observed Galactic GCLF equally well. We also show that there is no detectable correlation between and for GCs in the Milky Way and Andromeda galaxies, in contradiction with the KPZ09 model. Our comparisons of the FZ01 and KPZ09 models with observations can be explained most simply if stars escape at rates approaching the classical limit for high-mass clusters, as expected on theoretical grounds.
14 pages, 10 figures. To be published as ApJ, 833, 8 (2016)
References in corpus (12)
- Evidence for primordial mass segregation in globular clusters
- Why haven't loose globular clusters collapsed yet?
- Measuring Consistent Masses for 25 Milky Way Globular Clusters
- Dynamical Evolution of Globular Cluster Systems formed in Galaxy Mergers: Deep HST/ACS Imaging of Old and Intermediate-Age Globular Clusters in NGC 3610
- The Luminosity Function of Star Clusters in 20 Star-Forming Galaxies Based on Hubble Legacy Archive Photometry
- Towards an N-body Model for the Globular Cluster M4
- Biases in the inferred mass-to-light ratio of globular clusters: no need for variations in the stellar mass function
- Relations Between the Luminosity, Mass, and Age Distributions of Young Star Clusters
- Sizes, Half-Mass Densities, and Mass Functions of Star Clusters in the Merger Remnant NGC 1316: Clues to the Fate of Second-Generation Globular Clusters
- A Comparison of Methods for Determining the Age Distribution of Star Clusters: Application to the Large Magellanic Cloud
- Evidence for Two Distinct Stellar Initial Mass Functions : Probing for Clues to the Dichotomy
- Density Dependence of the Mass Function of Globular Star Clusters in the Sombrero Galaxy and its Dynamical Implications